Author:
Huang Jia,Liu Haocheng,Gao Zhiying,Su Yue,Liu Qingyuan,Ge Wei,Luo Fengping,Xia Songqin,Cao Liuxuan,Xue Jianming,Wang Yugang,Wang Chenxu
Abstract
In fusion reactors, 14 MeV high-energy neutron irradiation of structural materials will produce large amounts of helium and hydrogen simultaneously with displacement defects. These He and H atoms will interact with displacement defects, leading to He-H synergistic effects and aggravating the irradiation damage. Currently, there exist no available high-flux fusion neutron sources. Additionally, the neutron energy spectrum and the generation of He and H in fission reactors or spallation neutron sources greatly differ from those in fusion reactors. Multi-ion beam irradiation is a promising method to emulate the synergistic effects induced by fusion neutron irradiation. This review summarizes the experimental studies on the He-H synergistic effects, and analyzes the effects of He and H on cavity evolution and swelling under multi-ion beam irradiation. The roles of various experimental factors are also discussed. More systematically controlled experiments are suggested to develop a comprehensive understanding of He-H synergistic effects in structural materials.
Funder
National Natural Science Foundation of China
State Key Laboratory of Nuclear Physics and Technology, Peking University
Subject
Materials Science (miscellaneous)
Cited by
10 articles.
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